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A resource-efficient multimedia encryption scheme for embedded video sensing system based on unmanned aircraft

机译:基于无人机的嵌入式视频传感系统资源高效的多媒体加密方案

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Battery-powered unmanned aerial vehicle based video sensing system is more cost-saving and energy-saving than traditional aircraft based systems. However, high-volume real-time sensing data is more vulnerable in unmanned system than that in manned system. Meanwhile, the computation and energy resources in such system are very limited, which restricts the use of complex encryption process on video data. Therefore, how to achieve confidentiality of video data under limited resources efficiently needs to be addressed. Firstly, resources constraints with their development trends in video sensing system are studied. Secondly, an information-utility-value-oriented resource-efficient encryption optimization model under resources constraints is given. Thirdly, based on this model, a video-compression-independent speed-adjustable lightweight encryption scheme with its improved version is proposed. Fourthly, a DSP and ARM based embedded secure video sensing system is designed, and the proposed encryption scheme has been implemented in it. In addition, theoretical analyses based on information theory and experimental analyses on throughputs show that the proposed encryption schemes can meet the real-time requirements of system under the tight resources constraints. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:与传统的基于飞机的系统相比,基于电池的无人驾驶飞机的视频传感系统更加节省成本和节约能源。但是,无人系统中的大批量实时传感数据比有人系统更容易受到攻击。同时,这种系统的计算和能源非常有限,这限制了对视频数据使用复杂的加密过程。因此,需要解决如何在有限的资源下有效地实现视频数据的机密性。首先,研究了视频传感系统中的资源约束及其发展趋势。其次,给出了资源约束下面向信息效用值的资源高效加密优化模型。第三,基于该模型,提出了一种视频压缩无关的速度可调轻量级加密方案及其改进版本。第四,设计了一种基于DSP和ARM的嵌入式安全视频传感系统,并在其中实现了所提出的加密方案。此外,基于信息论的理论分析和对吞吐量的实验分析表明,所提出的加密方案在资源紧张的情况下可以满足系统的实时性要求。 (C)2015作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可(http://creativecommons.org/licenses/by-nc-nd/4.0/)下的开放获取文章。

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